
Quantum "time reversal" is utilized by physicists to monitor vibrating atoms
A novel approach could enhance the precision of atomic clocks and quantum detectors used to detect dark matter or gravitational waves.
Author
394 articles on Neutrino Science.
More about the editorial team on about us, orget in touch.
Page 15 of 17

A novel approach could enhance the precision of atomic clocks and quantum detectors used to detect dark matter or gravitational waves.

Signals buried deep inside gravitational wave observatory data suggest a collision between two black holes that were certainly created in separate locations.

Newly found "time crystals" appear to challenge a fundamental law of nature: the ban against perpetual motion.

One of the most powerful telescopes on Earth has been supercharged with new technology that will reveal the formation of our galaxy in unparalleled detail.

The evidence for the presence of a sort of unseen matter—now dubbed dark matter—is overwhelming half a century after Vera Rubin and Kent Ford showed that it…

One day, astronauts may consume salad produced in asteroid dirt. Researchers say that chili pepper, pink radish and romaine lettuce plants flourished in…

An additional layer of metal fluoride permits charge separation and improves the performance of perovskite–silicon tandem solar cells.

Quantum computing, next-generation quantum sensing, and quantum networking are still in the future for most of us.

Quantum computers are constructed using qubits, which are the quantum analogs of classical bits.

A new artificial intelligence software at Columbia University monitored physical processes and identified significant variables—a prerequisite for any physics…

Physicists from the University of Chicago have created a "quantum flute" that, like the Pied Piper, can coax light particles to move together in a…

We are now able to detect whether or not there are planets circling around dead binary stars thanks to the research that was conducted at a university in Mexico.

NASA has awarded Draper of Cambridge, Massachusetts a contract to deploy Artemis science missions to the Moon in 2025.

Researchers at the Indian Institute of Technology, Guwahati, have discovered striking parallels between the nature of Dark Matter and Neutrinos.

Blazars, the gas-consuming black holes at the heart of galaxies, may produce the majority of the neutrinos that Earth detects.

The latest data has eliminated any possibilities of strange new particles being detected in a detector for dark matter.

Massimo Pascale did not intend to investigate the SMACS 0723 galaxy cluster. However, as soon as he saw the cluster glistening in the first image captured by…

Using neutrinos, astronomers want to learn more about what's going on inside the sun's core with the help of a mission idea they've devised.

New polymer electrolytes for lithium-ion batteries can be developed using automated molecular design through machine learning.

Working with data from the Borexino detector at the Laboratori Nazionali del Gran Sasso in Italy, a group of researchers demonstrated that solar neutrinos may…

Huge plasma bubbles emanating from the heart of the Milky Way may include debris from the entire galaxy and beyond.

What exactly is dark matter? Although it has never been witnessed, scientists believe that it comprises 85 percent of the universe's stuff.

Astronomers identified the first exoplanets near a pulsar, a fast-revolving star, thirty years ago.

Physicists may have recently stumbled onto the long-sought-after new fundamental particle known as the sterile neutrino. This particle has proven difficult to find.